IP Library Granted Patent US 9,703,998
Granted Patent B2
US 9,703,998 · App. 14/461,500 · Granted Jul 11, 2017

Reconfigurable RFID antenna assembly utilizing a common reflector code

Inventors: David E. Bellows (Wantagh, NY); Rehan K Jaffri (New York, NY)
Assignee: Symbol Technologies, LLC
G06K7/10356G06K7/0008G06K7/10009H01Q1/007H01Q1/08H01Q1/1207H01Q1/2216H01Q5/307H01Q7/00H01Q7/02H01Q15/14H01Q19/106H01Q21/0087H01Q21/205
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Quick Facts
Patent No.
US 9,703,998
App. No.
14/461,500
Granted
Jul 11, 2017
Kind
B2
Abstract

A reconfigurable Radio Frequency Identification (RFID) antenna assembly utilizing a common reflector core includes a plurality of antennas, wherein each antenna consists of: a first replaceable antenna element, at least one first replaceable standoff, and a reflector panel, which is configured for a lowest operable frequency of the antenna assembly. The reflector panels of all the plurality of antenna elements are connected together to form a common reflector core housing within the antenna elements disposed outside of the housing. The first replaceable antenna element, the first replaceable standoffs, and the common reflector core are configured for a first operating frequency of the antenna assembly. The first replaceable antenna elements and first replaceable standoffs are replaceable on the common reflector core with second replaceable antenna elements and second replaceable standoffs operable at a second frequency.

Claims (36)

1. A reconfigurable Radio Frequency Identification (RFID) antenna assembly utilizing a common reflector core, comprising:

a plurality of antennas, wherein each antenna consists of:

a first replaceable antenna element,

at least one first replaceable standoff, and

a reflector panel, wherein

reflector panels of all the plurality of antennas are connected together to form a common reflector core housing with respective first replaceable antenna elements disposed outside of the common reflector core housing, wherein

the first replaceable antenna element and the at least one first replaceable standoff, of each of the plurality of antennas, and the common reflector core housing, are configured for a first operating frequency of the antenna assembly, and wherein

the first replaceable antenna element and the at least one first replaceable standoff, of each of the plurality of antennas, are replaceable on the common reflector core housing with second replaceable antenna elements and second replaceable standoffs operable at a second operating frequency,

wherein the first replaceable antenna element, of each of the plurality of antennas, comprise a loop antenna, and the reflector panel, of each of the plurality of antennas, is flat, and wherein dimensions of the loop antenna and a length of the least one first replaceable standoff, of each of the plurality of antennas, are configured for a respective operating frequency of the first operating frequency and the second operating frequency, and wherein the loop antenna, of each of the plurality of antennas, is spaced parallel to a respective flat portion of the common reflector core housing using associated standoffs.

2. The antenna assembly of claim 1 , wherein the common reflector core housing is grounded and configured to enclose electronic circuitry therein.

3. The antenna assembly of claim 2 , wherein the common reflector core housing is joined with a conductive top and bottom to form an enclosed housing.

4. The antenna assembly of claim 1 , wherein the first operating frequency is lower than the second operating frequency.

5. The antenna assembly of claim 1 , wherein the first operating frequency is a lowest operable frequency of the antenna assembly, and wherein the reflector panel, of each of the plurality of antennas, is configured for the lowest operable frequency.

6. The antenna assembly of claim 1 , wherein the common reflector core housing forms a central three-dimensional reflector core, with the first replaceable antenna element, of each of the plurality of antennas, is disposed to radiate outwardly therefrom.

7. A Radio Frequency Identification (RFID) reader incorporating a reconfigurable Radio Frequency Identification (RFID) antenna assembly utilizing a common reflector core, comprising:

an RFID reader;

a plurality of radio ports coupled to the RFID reader; and

a plurality of antennas, wherein each antenna consists of:

a first replaceable antenna element,

at least one first replaceable standoff, and

a reflector panel, wherein

reflector panels of all the plurality of antennas elements are connected together to form a common reflector core housing with respective first replaceable antenna elements disposed outside of the common reflector core housing, wherein

the first replaceable antenna element and the at least one first replaceable standoff, of each of the plurality of antennas, and the common reflector core housing, are configured for a first operating frequency of the antenna assembly, and wherein

the first replaceable antenna element and the at least one first replaceable standoff, of each of the plurality of antennas, are replaceable on the common reflector core housing with second replaceable antenna elements and second replaceable standoffs operable at a second operating frequency,

wherein the first replaceable antenna element, of each of the plurality of antennas, comprise a loop antenna, and the reflector panel, of each of the plurality of antennas, is flat, and wherein dimensions of the loop antenna and a length of the least one first replaceable standoff, of each of the plurality of antennas, are configured for a respective operating frequency of the first operating frequency and the second operating frequency, and wherein the loop antenna, of each of the plurality of antennas, is spaced parallel to a respective flat portion of the common reflector core housing using associated standoffs.

8. A method for reconfiguring a Radio Frequency Identification (RFID) antenna assembly utilizing a common reflector core, the method comprising:

providing a plurality of antennas, wherein each antenna consists of:

a first replaceable antenna element,

at least one first replaceable standoff, and

a reflector panel;

connecting reflector panels of all the plurality of antennas together to form a common reflector core housing with respective antenna elements disposed outside of the common reflector core housing;

installing the first replaceable antenna element and the at least one first replaceable standoff, of each of the plurality of antennas, to the common reflector core housing, wherein the first replaceable antenna element, the at least one first replaceable standoff, of each of the plurality of antennas, and the common reflector core housing are configured for a first operating frequency of the antenna assembly; and

replacing the first replaceable antenna element and the at least one first replaceable standoff, of a portion of the plurality of antennas, with second replaceable antenna elements and second replaceable standoffs on the common reflector core housing, wherein the second replaceable antenna elements, second replaceable standoffs, and common reflector core housing are operable at a second operating frequency,

wherein the providing includes the first replaceable antenna element, of each of the plurality of antennas, being a loop antenna, and the reflector panel, of each of the plurality of antennas, being flat, and wherein dimensions of the loop antenna and a length of the least one first replaceable standoff, of each of the plurality of antennas, are configured for a respective operating frequency of the first operating frequency and the second operating frequency, and wherein the installing includes the loop antenna, of each of the plurality of antennas, being spaced parallel to a respective flat portion of the common reflector core housing using associated standoffs.

9. The method of claim 8 , wherein the providing includes configuring the reflector panel, of each of the plurality of antennas, for a lowest operable frequency of the antenna assembly.

10. The method of claim 8 , wherein the connecting includes the common reflector core housing being also joined with a conductive top and bottom to form a grounded, three-dimensional, enclosed housing configured to enclose electronic circuitry therein, and with the first replaceable antenna element, of each of the plurality of antennas, disposed to radiate outwardly from the enclosed housing.

Assignments (5)
RELEASE OF SECURITY INTEREST Recorded Aug 17, 2015
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: SYMBOL TECHNOLOGIES, INC.
Reel/Frame 036371/0738 →
CHANGE OF NAME Recorded Jul 8, 2015
From: SYMBOL TECHNOLOGIES, INC.
To: SYMBOL TECHNOLOGIES, LLC
Reel/Frame 036083/0640 →
SECURITY AGREEMENT Recorded Oct 31, 2014
From: ZIH CORP.; LASER BAND, LLC; ZEBRA ENTERPRISE SOLUTIONS CORP.; SYMBOL TECHNOLOGIES, INC.
To: MORGAN STANLEY SENIOR FUNDING, INC. AS THE COLLATERAL AGENT
Reel/Frame 034114/0270 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 18, 2014
From: BELLOWS, DAVID E.; JAFFRI, REHAN K.
To: SYMBOL TECHNOLOGIES, INC.
Reel/Frame 033551/0531 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 18, 2014
From: BELLOWS, DAVID E.; JAFFRI, REHAN K.
To: SYMBOL TECHNOLOGIES, INC.
Reel/Frame 033551/0573 →
Continuity (1)
Related Publication 20160048713A1 · Feb 18, 2016